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Stability, bifurcation and chaos of a high-speed rub-impact rotor system in MEMS

机译:MEMS中高速碰摩转子系统的稳定性,分叉和混沌

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A general model of a Jeffcott micro-rotor system with rub-impact is established based on the classic impact theory and is analyzed by the modem nonlinear dynamics and bifurcation theories. An investigation is carried out on the stability of the rub solutions of the rotor system and the results provide a better understanding of the dynamical characteristics, such as the transition among periodic, quasi-periodic and chaotic responses, of the rotor system with rub-impact under different system parameter combinations. Nonlinear behaviors of rub-related vibrations are studied with a large number of numerical simulations. The effects of rotating speed, imbalance, damping coefficient, impact stiffness, and friction coefficient on the micro-rotor responses are investigated in detail. It is demonstrated that the system goes through an extraordinary route to chaos and alternates among the periodic, quasi-periodic and chaotic motions as the system parameters change. These forms of dynamical characteristics can be effectively used to diagnose the rub-impact fault. The results help engineers to optimize the design of micro-rotating machinery in MEMS, as well as to develop sensitive monitoring/diagnosis systems assessing machinery conditions. (c) 2005 Elsevier B.V. All rights reserved.
机译:基于经典冲击理论,建立了具有摩擦冲击力的Jeffcott微转子系统的通用模型,并通过现代非线性动力学和分叉理论对其进行了分析。对转子系统的摩擦解决方案的稳定性进行了研究,结果提供了对动力学特性的更好理解,例如具有摩擦影响的转子系统的动力学特性,例如周期性,准周期性和混沌响应之间的过渡在不同的系统参数组合下。通过大量数值模拟研究了与摩擦有关的振动的非线性行为。详细研究了转速,不平衡,阻尼系数,冲击刚度和摩擦系数对微转子响应的影响。结果表明,随着系统参数的变化,系统经历了一条异常的混沌路径,并在周期性运动,准周期性运动和混沌运动之间交替变化。这些形式的动力学特性可以有效地用于诊断摩擦冲击故障。结果有助于工程师优化MEMS中的微旋转机械的设计,以及开发评估机械状况的灵敏监测/诊断系统。 (c)2005 Elsevier B.V.保留所有权利。

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